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A new calculating method to perform springback predictions for varied curvature sheet bending based on the B-spline function

机译:基于B样条函数的变曲率板材弯曲回弹预测的新计算方法

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This paper presents a new method to calculate the bending moments in varied curvature sheet bending. Compared with traditional bending theories which suppose the curvature radii to be constant, the new formulas of stress and strain consider the geometrical characteristics of the profiles, thus they can reflect the internal force in the sheet more accurately. Also, they are consistent with traditional bending theories when the curvature remains unchanged. Springback predictions are performed based on the calculated bending moments. The final shapes of the sheet after springback are obtained by proper discrete and connecting technologies. Two cases are provided to demonstrate the calculating method. In the first case, a cubic non-uniform B-spline curve is used to interpolate the known die profile. This curvature continuity spline gives a relatively accurate expression of the curvature change phenomenon. In the second case, the math expression of a desired bending shape is already known, and the method we proposed is proved to be generally applicable by predicting the final shape of the sheet. The calculating results can reveal how the bending moments change with the curvature radii. They are in great agreement with experiments and also they have been compared with numerical simulations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种计算变曲率薄板弯曲中弯矩的新方法。与假定曲率半径恒定的传统弯曲理论相比,应力和应变的新公式考虑了型材的几何特性,因此它们可以更准确地反映板中的内力。而且,当曲率保持不变时,它们与传统的弯曲理论是一致的。基于计算的弯矩执行回弹预测。回弹后板材的最终形状是通过适当的离散和连接技术获得的。提供两种情况来说明计算方法。在第一种情况下,三次非均匀B样条曲线用于内插已知的模具轮廓。该曲率连续性样条给出了曲率变化现象的相对准确的表示。在第二种情况下,所需弯曲形状的数学表达式是已知的,并且通过预测板材的最终形状证明了我们提出的方法是普遍适用的。计算结果可以揭示弯矩如何随曲率半径变化。它们与实验非常吻合,并且已与数值模拟进行了比较。 (C)2016 Elsevier Ltd.保留所有权利。

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